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通过建立原代培养细胞对濒危侏儒水牛(低地倭水牛,Bubalus quarlesi)进行细胞保存,并通过细胞周期调节因子的表达使其永生化。

Cellular conservation of endangered midget buffalo (Lowland Anoa, Bubalus quarlesi) by establishment of primary cultured cell, and its immortalization with expression of cell cycle regulators.

作者信息

Fukuda Tomokazu, Iino Yuuka, Eitsuka Takahiro, Onuma Manabu, Katayama Masafumi, Murata Koichi, Inoue-Murayama Miho, Hara Kumiko, Isogai Emiko, Kiyono Tohru

机构信息

United Graduate School of Agricultural Sciences, Graduate School of Agricultural Science, Iwate University, 4-3-5, Ueda, Morioka, Iwate, 020-8551, Japan.

Wildlife Genome Collaborative Research Group, National Institute for Environmental Studies, Tsukuba, Ibaraki, Japan.

出版信息

Cytotechnology. 2016 Oct;68(5):1937-47. doi: 10.1007/s10616-016-0004-0. Epub 2016 Jul 23.

Abstract

Lowland Anoa has become endangered due to hunting and human activity. Protection and breeding of endangered species in a controlled environment is the best way of conservation. However, it is not possible to adopt this approach for all endangered species because of the cost involved and the ever-increasing number of critically endangered species. In consideration of these limitations to the conventional conservation methods, we established a primary cell culture of endangered buffalo (Lowland Anoa, Bubalus quarlesi), for the preservation of this biological resource. In addition, we introduced human derived, mutant cyclin dependent kinase 4 (CDK4), Cyclin D, and telomerase reverse transcriptase (TERT) into the primary cells. The successful introduction of these three genes was confirmed by western blot with specific antibodies, and enzymatic activity. We also showed that the expression of mutant CDK4, Cyclin D, and TERT allows us to efficiently establish an immortalized cell line, with an intact chromosome pattern, from Lowland Anoa. To the best of our knowledge, this study is the first investigation that established an immortalized cell line of an endangered wild animal species.

摘要

低地倭水牛由于狩猎和人类活动已濒临灭绝。在可控环境中对濒危物种进行保护和繁育是最佳的保护方式。然而,由于成本问题以及极度濒危物种数量的不断增加,不可能对所有濒危物种都采用这种方法。考虑到传统保护方法存在这些局限性,我们建立了濒危水牛(低地倭水牛,Bubalus quarlesi)的原代细胞培养体系,以保存这一生物资源。此外,我们将人类来源的突变细胞周期蛋白依赖性激酶4(CDK4)、细胞周期蛋白D和端粒酶逆转录酶(TERT)导入原代细胞中。通过使用特异性抗体进行蛋白质免疫印迹和酶活性检测,证实了这三个基因的成功导入。我们还表明,突变型CDK4、细胞周期蛋白D和TERT的表达使我们能够从低地倭水牛高效建立具有完整染色体模式的永生化细胞系。据我们所知,本研究是首次建立濒危野生动物物种永生化细胞系的研究。

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